Wang Yan, Zheng Xiyin, Yu Bingjie, Han Shaojie, Guo Jiangbo, Tang Haiping, Yu Alice Yunzi L, Deng Haiteng, Hong Yiguo, Liu Yule
a Center for Plant Biology ; Beijing , China.
b MOE Key Laboratory of Bioinformatics; School of Life Sciences; Tsinghua University ; Beijing , China.
Autophagy. 2015;11(12):2259-74. doi: 10.1080/15548627.2015.1113365.
Microtubules, the major components of cytoskeleton, are involved in various fundamental biological processes in plants. Recent studies in mammalian cells have revealed the importance of microtubule cytoskeleton in autophagy. However, little is known about the roles of microtubules in plant autophagy. Here, we found that ATG6 interacts with TUB8/β-tubulin 8 and colocalizes with microtubules in Nicotiana benthamiana. Disruption of microtubules by either silencing of tubulin genes or treatment with microtubule-depolymerizing agents in N. benthamiana reduces autophagosome formation during upregulation of nocturnal or oxidation-induced macroautophagy. Furthermore, a blockage of leaf starch degradation occurred in microtubule-disrupted cells and triggered a distinct ATG6-, ATG5- and ATG7-independent autophagic pathway termed starch excess-associated chloroplast autophagy (SEX chlorophagy) for clearance of dysfunctional chloroplasts. Our findings reveal that an intact microtubule network is important for efficient macroautophagy and leaf starch degradation.
微管作为细胞骨架的主要成分,参与植物的各种基本生物学过程。最近在哺乳动物细胞中的研究揭示了微管细胞骨架在自噬中的重要性。然而,关于微管在植物自噬中的作用知之甚少。在此,我们发现ATG6与TUB8/β-微管蛋白8相互作用,并与本氏烟草中的微管共定位。在本氏烟草中,通过沉默微管蛋白基因或用微管解聚剂处理来破坏微管,会减少夜间或氧化诱导的巨自噬上调过程中的自噬体形成。此外,在微管被破坏的细胞中发生了叶片淀粉降解受阻的情况,并触发了一条独立于ATG6、ATG5和ATG7的自噬途径,称为淀粉过量相关叶绿体自噬(SEX叶绿体自噬),用于清除功能失调的叶绿体。我们的研究结果表明,完整的微管网络对于有效的巨自噬和叶片淀粉降解很重要。